Published January 1, 2016 | Version v1
Journal article Open

Phononic band gap and wave propagation on polyvinylidene fluoride-based acoustic metamaterials

  • 1. Harran Univ, Dept Phys, TR-63300 Sanliurfa, Turkey
  • 2. Hakkari Univ, Dept Mat Sci & Engn, Fac Engn, TR-30000 Hakkari, Turkey
  • 3. Bilkent Univ, Nanotechnol Res Ctr NANOTAM, TR-06800 Bilkent, Turkey

Description

In the present work, the acoustic band structure of a two-dimensional phononic crystal (PC) containing an organic ferroelectric (PVDF-polyvinylidene fluoride) and topological insulator (SnTe) was investigated by the plane-wave-expansion (PWE) method. Two-dimensional PC with square lattices composed of SnTe cylindrical rods embedded in the PVDF matrix is studied to find the allowed and stop bands for the waves of certain energy. Phononic band diagram. omega = omega(k)for alpha 2D PC, in which non-dimensional frequencies omega alpha/2 pi c (c-velocity of wave) were plotted vs. the wavevector k along the Gamma-X-M-Gamma. path in the square Brillouin zone shows five stop bands in the frequency range between 10 and 110 kHz. The ferroelectric properties of PVDF and the unusual properties of SnTe as a topological material give us the ability to control the wave propagation through the PC over a wide frequency range of 10(3)-10(6) Hz. SnTe is a discrete component that allows conducting electricity on its surface but shows insulator properties through its bulk volume. Tin telluride is considered as an acoustic topological insulator as the extension of topological insulators into the field of "topological phononics".

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